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Mohapatra, R.N.; Zhangi, Yongchao, E-mail: rmohapat@umd.edu2016
AbstractAbstract
[en] The issue of vacuum stability of Standard model (SM) is discussed by embedding it within the TeV scale left-right quark see-saw model. The Higgs potential in this case has only two coupling parameters (λ_1, λ_2) and two mass parameters. There are only two physical neutral Higgs bosons (h, H), the lighter one being identified with the 126 GeV Higgs boson. We explore the range of values for (λ_1, λ_2) for which the vacuum is stable for all values of the Higgs fields till 10"1"6 GeV. Combining with the further requirement that the scalar self-couplings remain perturbative till 10"1"6 GeV, we find i) an upper and lower limit on the second Higgs (H) mass to be within the range: 0.4 ≤ (M_H/ν_R) ≤ 0.7, where ν_R is the parity breaking scale and ii) the masses of heavy vector-like top, bottom and τ partner fermions (P_3, E_3, N_3) have an upper bound ≤ν_R. These predictions can be tested at LHC and future higher energy colliders. (author)
Primary Subject
Source
UNICOS-2014: international workshop on unification and cosmology after Higgs discovery and BICEP2; Chandigarh (India); 13-15 May 2014; 20 refs. 5 figs.
Record Type
Journal Article
Literature Type
Conference
Journal
Pramana; CODEN PRAMCI; v. 86(2); p. 265-280
Country of publication
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